IEEE Trans Biomed Eng. 2013 Nov;60(11):3009-18. doi: 10.1109/TBME.2012.2236091. Epub 2012 Dec 21.
This paper presents the prototype for an augmented reality haptic simulation system with potential for spinal needle insertion training. The proposed system is composed of a torso mannequin, a MicronTracker2 optical tracking system, a PHANToM haptic device, and a graphical user interface to provide visual feedback. The system allows users to perform simulated needle insertions on a physical mannequin overlaid with an augmented reality cutaway of patient anatomy. A tissue model based on a finite-element model provides force during the insertion. The system allows for training without the need for the presence of a trained clinician or access to live patients or cadavers. A pilot user study demonstrates the potential and functionality of the system.
本文提出了一种具有潜在应用价值的增强现实触觉模拟系统原型,可用于脊柱针插入训练。该系统由人体模型、MicronTracker2 光学跟踪系统、PHANToM 触觉设备和图形用户界面组成,用于提供视觉反馈。系统允许用户在叠加有患者解剖结构的增强现实剖面图的物理人体模型上进行模拟针插入操作。基于有限元模型的组织模型在插入过程中提供力反馈。该系统允许在不需要训练有素的临床医生在场、无法接触到活体患者或尸体的情况下进行培训。一项初步的用户研究证明了该系统的潜力和功能。